• 제목/요약/키워드: detention storage

검색결과 54건 처리시간 0.022초

강변저류지 횡월류부의 흐름 형태 변화를 고려한 HEC-RAS의 하도 내 부정류 모의 정확도 분석 (Accuracy Analysis of HEC-RAS for Unsteady Flow Simulation considering the Flow Pattern Variations over the Side-weir of Side-Weir Detention Basin)

  • 김상혁;윤병만;김동수;김서준
    • 한국수자원학회논문집
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    • 제49권1호
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    • pp.29-39
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    • 2016
  • 강변저류지를 홍수방어대책에 포함시키기 위해서는 정확한 홍수조절효과 산정이 필요하며, 이를 위해 현재 실무에서는 1차원 부정류 수치모형인 HEC-RAS를 사용하고 있다. 그러나 강변저류지의 저류용량이 부족한 경우에 발생하는 잠긴 횡월류 흐름에 대해서는 HEC-RAS 부정류 수치모의의 정확도 분석이 수행되지 않았다. 따라서 본 연구에서는 직선수로에 강변저류지를 설치한 경우에 대하여 횡월류부의 다양한 흐름 형태를 재현할 수 있는 부정류 수리실험을 수행하였다. 또한 부정류 수리실험 결과를 이용하여 HEC-RAS 모형의 부정류 수치모의 결과의 정확도를 분석하여 하도 내 수위 오차 및 강변저류지의 홍수조절효과 산정 오차를 제시하였다. 분석 결과 횡월류부에서 잠긴 횡월류 흐름이 발생하는 경우에 대한 HEC-RAS의 수위 계산 결과는 최대 -5% 오차를 보였으며, 홍수조절효과 오차는 최대 2.4%로 나타나 HEC-RAS의 부정류 모의 결과가 비교적 정확한 것을 확인하였다.

유수지 설계를 위한 계획강우의 임계지속기간 -서울 지역을 중심으로- (Design of Edtention Pond and Critical Duration of Design Rainfall in Seoul)

  • 이종태;윤세의
    • 물과 미래
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    • 제26권1호
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    • pp.115-124
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    • 1993
  • 본 연구는 유수지.배수펌프장설계를 위한 계획강우의 임계지속기간의 결정 및 이에 근거한 계획 유수지.배수펌프장의 적정규모 추정에 관한 것이다. 계획강우의 지속기간과 시간적 분포형의 변화에 따른 영향을 파악하기 위하여 20~240분 범위의 9가지 경우의 지속기간들과 Huff의 4분위법에 의한 4종류의 강우분포들을 검토대상 강우로 선택하였으며, 유출해석모형으로는 ILLUDAS를 사용하였다. 임계지속기간 결정기준으로서 저류비(총유출량에 대한 최대저류량의 비)의 개념을 도입하였으며, 이 값을 최대로 하는 지속기간을 계획강우의 임계지속기간으로 하였다. 본 연구를 위하여 배수구역면적이 $0.24~12.7\textrm{km}^2인$ 서울시의 18개 유수지.배수펌프장을 선정하였으며, 분석 결과 전반적으로 30분과 60분이 임계지속기간으로 나타났다. 도한 Huff의 제 2, 3분위형의 경우가 제 1, 4분위형 보다 큰 저류비를 보여주었다. 또한 임계지속기간을 갖는 강우조건에서의 최대저류비와 첨두입출비간의 회귀식을 제시하였다. 이 관계식은 유수지 배수펌프장 계획수립에 활용될 수 있을 것으로 기대된다.

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시설원예단지의 생태계서비스 기능 증진을 위한 개선방안 연구 (A study on the improvement of Ecosystem Service Function for the Protected Horticulture Complex in Agricultural Landscape)

  • 손진관;공민재;강동현;이시영
    • 농촌계획
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    • 제21권4호
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    • pp.45-53
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    • 2015
  • Agriculture, rural landscapes are accompanied by a variety of environmental issues. Therefore, it is necessary to study on biodiversity and ecosystem services. Horticulture complex is low groundwater recharge function, it can be evaluated as a facility that biodiversity is impaired. The ecosystem services in agricultural landscapes were obtained 19 kinds of functions. Experts survey Groundwater recharge function (4.13) teeth chapter higher, Water storage (4.05), Amphibian & Reptile habitat (3.96), Aquatic insect habitat (3.92), Flood control (3.87), Water purification (3.86), Avian habitat (3.76 ), Creating landscape (3.74), Vegetation diversity (3.71), Experience, Education (3.69), Biological control (3.48), Fishery habitat (3.42), Climate regulation (3.30), Mammal habitat (3.30), Air quality regulation (3.25 ), Mainenance of genetic diversity (3.25), were analyzed in order Rest area (3.14). Improving capabilities in the Detention Pond, Wetland, Green space, Corridor, Non-Chemical, Program development, Green spaces, Rainwater storage facilities, Water cycle system, Surface water storage facilities, Infiltration trench, Water purification facilities, Permeable pavement. Environmentally friendly, and to contribute to sustainable agricultural development through ecological planning.

슬러지의 성상이 DAF(Dissolved Air Flotation)를 이용한 팽화 슬러지 농축에 미치는 영향 (Effect of Sludge Characteristics on the Thickening of Bulking Sludge using DAF (Dissolved Air Flotation))

  • 김동석;박영식
    • 한국물환경학회지
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    • 제22권1호
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    • pp.97-103
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    • 2006
  • Excess sludge treatment and disposal currently represent a rising challenge for domestic or wastewater treatment plants due to economic, environmental and regulation factors. Conventional gravity sedimentation process has been widely used in sludge thickening. The operation method of the process is very simple, but the process requires long detention time for sludge thickening, uses polymers, and shows low sludge thickening efficiency. To solve the problems, we studied on DAF (Dissolved Air Flotation) system. We use bulking sludge of a paper manufacturing plant. The effects of parameters such as SVI (Sludge Volume Index), storage time, initial concentration and wet density of excess sludge were examined. The results showed that the more SVI was low, the more sludge was thickened. As storage time goes by, SVI was increased and thickening performance was deteriorated. In order to improve flotation performance at high concentration, high recycling ratio and pressure did not increase the concentration due to thickening limitation. The addition of 0.8 g/L of loess was increased flotation efficiency of 1.41 times.

도시유역 CSOs 처리를 위한 저류형시스템 설계용량 산정 (Estimation of Storage Capacity for CSOs Storage System in Urban Area)

  • 조덕준;이정호;김명수;김중훈;박무종
    • 한국물환경학회지
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    • 제23권4호
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    • pp.490-497
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    • 2007
  • A Combined sewer overflows (CSOs) are themselves a significant source of water pollution. Therefore, the control of urban drainage for CSOs reduction and receiving water quality protection is needed. Examples in combined sewer systems include downstream storage facilities that detain runoff during periods of high flow and allow the detained water to be conveyed by an interceptor sewer to a centralized treatment plant during periods of low flow. The design of such facilities as stormwater detention storage is highly dependant on the temporal variability of storage capacity available (which is influenced by the duration of interevent dry periods) as well as the infiltration capacity of soil and recovery of depression storage. As a result, a continuous approach is required to adequately size such facilities. This study for the continuous long-term analysis of urban drainage system used analytical probabilistic model based on derived probability distribution theory. As an alternative to the modeling of urban drainage system for planning or screening level analysis of runoff control alternatives, this model have evolved that offer much ease and flexibility in terms of computation while considering long-term meteorology. This study presented rainfall and runoff characteristics of the subject area using analytical probabilistic model. This study presented the average annual COSs and number of COSs when the interceptor capacity is in the range $3{\times}DWF$ (dry weather flow). Also, calculated the average annual mass of pollutant lost in CSOs using Event Mean Concentration. Finally, this study presented a decision of storage volume for CSOs reduction and water quality protection.

도시유역 저류형 시스템 설계를 위한 CSOs 산정 (Storm-Water CSOs for Reservoir System Designs in Urban Area)

  • 조덕준;김명수;이정호;박무종;김중훈
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2005년도 학술발표회 논문집
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    • pp.1199-1203
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    • 2005
  • Combined sewer overflows(CSOs) are themselves a significant source of water pollution. Therefore, the control of urban drainage for CSOs reduction and receiving water quality protection is needed. Examples in combined sewer systems include downstream storage facilities that detain runoff during periods of high flow and allow the detained water to be conveyed by an interceptor sewer to a centralized treatment plant during periods of low flow. The design of such facilities as stormwater detention storage is highly dependant on the temporal variability of storage capacity available(which is influenced by the duration of interevent dry periods) as well as the infiltration capacity of soil and recovery of depression storage. As a result, a contiunous approach is required to adequately size such facilities. This study for the continuous long-term analysis of urban dranage system used analytical Probabilistic model based on derived probability distribution theory. As an alternative to the modeling of urban drainage system for planning or screening level analysis of runoff control alternatives, this model have evolved that offer much ease and flexibility in terms of computation while considering long-term meteorology. This study presented rainfall and runoff characteristics or the subject area using analytical Probabilistic model. Runoff characteristics manifasted the unique characteristics of the subject area with the infiltration capacity of soil and recovery of depression storage and was examined appropriately by sensitivity analysis. This study presented the average annual COSs and number of COSs when the interceptor capacity is in the range 3xDWF(dry weather flow). Also, calculated the average annual mass of pollutant lost in CSOs using Event Mean Concentration. Finally, this study presented a dicision of storage volume for CSOs reduction and water quality protection.

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연속 강우-유출 모의기법을 이용한 최적 CSOs 산정에 관한 연구 (A Study of Optimal-CSOs by Continuous Rainfall/Runoff Simulation Techniques)

  • 조덕준;김명수;이정호;김중훈
    • 한국물환경학회지
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    • 제22권6호
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    • pp.1068-1074
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    • 2006
  • For receiving water quality protection a control systems of urban drainage for CSOs reduction is needed. Examples in combined sewer systems include downstream storage facilities that detain runoff during periods of high flow and allow the detained water to be conveyed by an interceptor sewer to a centralized treatment plant during periods of low flow. The design of such facilities as storm-water detention storage is highly dependant on the temporal variability of storage capacity available as well as the infiltration capacity of soil and recovery of depression storage. For the continuous long-term analysis of urban drainage system this study used analytical probabilistic model based on derived probability distribution theory. As an alternative to the modeling of urban drainage system for planning or screening level analysis of runoff control alternatives, this model has evolved that offers much ease and flexibility in terms of computation while considering long-term meteorology. This study presented rainfall and runoff characteristics of the subject area using analytical probabilistic model. Runoff characteristics manifested the unique characteristics of the subject area with the infiltration capacity of soil and recovery of depression storage and was examined appropriately by sensitivity analysis. This study presented the average annual CSOs, number of CSOs and event mean CSOs for the decision of storage volume.

국내 공동주택단지 자연 순응형 빗물관리시설 사례 분석 (Nature-adapted Rainwater Management Facility Cases in Korean Apartment Complexes)

  • 현경학;장선영;안성식
    • 환경영향평가
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    • 제15권2호
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    • pp.111-119
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    • 2006
  • In Korea, an environment-friendly concept of "rain re-cycling" was initially introduced in apartment complex planning and designs in the late 1990s. Although its application cases are extremely few, with the growing importance of rainwater utilization, introduction of rainwater management facilities in urban areas began to drawn keen attention. In urban areas also, plans to introduce rainwater management facilities in apartment complexes as infrastructure improving living environment, such as sewage treatment facilities are very urgently required. In order to introduce rainwater management facilities as infrastructure in an apartment complex, apartment complex cases that had introduced the facilities were reviewed first. In this study, a few applied rainwater management facilities in an apartment complex were surveyed(Infiltration barrel, Rubble porosity storage tank, Underground storage tank). As a result, problems in introducing rainwater management facilities in apartment complexes in Korea were identified.

강변저류지 설계인자별 유량계수의 민감도 분석 (Analysis of Sensitivity according to Design factors in Detention Basin with Side Weir)

  • 홍상진;김서준;이진호;윤병만
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2011년도 학술발표회
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    • pp.153-153
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    • 2011
  • 강변저류지 설계를 위해 주로 사용되고 있는 방법은 1차원 부정류 수치모형인 HEC-RAS의 Storage 기법이다. HEC - RAS의 Storage 기법을 이용할 경우 설계자는 유입부 설계제원과 저류용량 외에 두 개의 매개변수를 결정해 주어야 한다. 하나는 하천의 조도계수이며, 다른 하나는 횡월류 위어의 유량계수이다. 그 중 횡월류 위어 유량계수는 강변저류지 홍수조절효과에 직접적으로 영향을 주는 저류량과 관련되어 있다. 따라서 저류량을 결정하기 위한 유량계수는 기존 연구자들에 의해 다양한 산정식들이 제시되어 있다. 하지만 횡월류 유량계수가 동일한 흐름 조건에서도 산정식별로 차이를 보이고 있어서, 설계자가 어떤 유량계수를 선택하느냐가 매우 중요하다. 따라서 본 연구에서는 홍수시 발생 가능한 유량계수의 범위를 결정한 후 설계 인자별로 유량계수의 변화에 따른 강변저류지 홍수조절효과를 분석하였다. 분석 결과 유량계수에 따라 크게는 최대홍수량 대비 약 5 ~ 6% 정도의 차이를 보였다. 이는 가장 작게 산정된 홍수조절효과의 범위가 약 15 ~ 20% 정도인 것과 비교하면 큰 차이를 보이는 것으로 확인하였다. 따라서 강변저류지 홍수조절효과 산정시 발생 가능한 다양한 유량계수를 적용하여 보수적으로 설계하는 것이 바람직할 것으로 판단된다.

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소규모 도시유역 합류식 하수관거 월류수 특성화 및 최적 저류지 용량 결정 (Characterization of Combined Sewer Overflows from a Small Urban Watershed and Determination of Optimum Detention Volume)

  • 조덕준;김건하
    • 한국물환경학회지
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    • 제22권2호
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    • pp.314-320
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    • 2006
  • Diffuse pollution from an urban area contributes to the significant pollution loading to a receiving water body. In this paper, rainfall runoffs from an urban basin with combined sewer systems located in the city of Daejeon were monitored to measure the rainfall runoff discharge rates and pollutant concentrations. Strong first flush effects were observed for all monitored rainfall runoffs. The first flush effects were closely related to rainfall intensity, while suspended solids were closely related to pollutant constituents. The observed averaged Event Mean Concentrations (EMCs) of Combined Sewer Overflows (CSOs) were 536.1 mg SS/L, 467.7 mg CODcr/L, 142.7 mg BOD/L, 16.5 mg TN/L, and 13.5 mg TP/L. Storage volumes for containing the first flush to improve water quality of the receiving stream can be estimated based on suspended solid concentration. In this study, retainment of the first flush equivalent to 5mm of precipitation could reduce diffuse pollution loading induced by CSOs to a receiving water body by up to 80% of suspended solid loading.